We analyze the evolution of the local magnetic moment of the newly discovered pressure-induced superconductor CrAs, as a function of the applied pressure. Our theoretical method is based on a combination of the tight-binding approximation and the Löwdin down-folding procedure, which enables us to derive a low-energy effective Hamiltonian projected onto the Cr-subsector. We set up our calculations by considering several sets of ab initio derived hopping parameters, corresponding to different volumes of the unit cell, and use them to obtain the simulated pressure-dependence of the Cr magnetic moment, which is evaluated within a mean-field treatment of the Coulomb repulsion between the electrons at the Cr sites. Our calculations show good agreement with available experimental data, both for the normal phase measured 1.7 ?B for Cr magnetic moment, and concerning the observed reduction of its amplitude for values that exceed the characteristic critical pressure

Tight-binding calculation of the magnetic moment of CrAs under pressure

Autieri C;Forte F;Noce C
2018

Abstract

We analyze the evolution of the local magnetic moment of the newly discovered pressure-induced superconductor CrAs, as a function of the applied pressure. Our theoretical method is based on a combination of the tight-binding approximation and the Löwdin down-folding procedure, which enables us to derive a low-energy effective Hamiltonian projected onto the Cr-subsector. We set up our calculations by considering several sets of ab initio derived hopping parameters, corresponding to different volumes of the unit cell, and use them to obtain the simulated pressure-dependence of the Cr magnetic moment, which is evaluated within a mean-field treatment of the Coulomb repulsion between the electrons at the Cr sites. Our calculations show good agreement with available experimental data, both for the normal phase measured 1.7 ?B for Cr magnetic moment, and concerning the observed reduction of its amplitude for values that exceed the characteristic critical pressure
2018
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
Critical pressures
Effective Hamiltonian
Local magnetic moments
Mean-field treatments
Pressure dependence
Theoretical methods
Tight-binding approximations
Tight-binding calculations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/343607
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